Intrinsic signaling pathways modulate targeted protein degradation

内在信号通路调节靶向蛋白质降解

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作者:Yuki Mori #, Yoshino Akizuki #, Rikuto Honda, Miyu Takao, Ayaka Tsuchimoto, Sota Hashimoto, Hiroaki Iio, Masakazu Kato, Ai Kaiho-Soma, Yasushi Saeki, Jun Hamazaki, Shigeo Murata, Toshikazu Ushijima, Naoko Hattori, Fumiaki Ohtake

Abstract

Targeted protein degradation is a groundbreaking modality in drug discovery; however, the regulatory mechanisms are still not fully understood. Here, we identify cellular signaling pathways that modulate the targeted degradation of the anticancer target BRD4 and related neosubstrates BRD2/3 and CDK9 induced by CRL2VHL- or CRL4CRBN -based PROTACs. The chemicals identified as degradation enhancers include inhibitors of cellular signaling pathways such as poly-ADP ribosylation (PARG inhibitor PDD00017273), unfolded protein response (PERK inhibitor GSK2606414), and protein stabilization (HSP90 inhibitor luminespib). Mechanistically, PARG inhibition promotes TRIP12-mediated K29/K48-linked branched ubiquitylation of BRD4 by facilitating chromatin dissociation of BRD4 and formation of the BRD4-PROTAC-CRL2VHL ternary complex; by contrast, HSP90 inhibition promotes BRD4 degradation after the ubiquitylation step. Consequently, these signal inhibitors sensitize cells to the PROTAC-induced apoptosis. These results suggest that various cell-intrinsic signaling pathways spontaneously counteract chemically induced target degradation at multiple steps, which could be liberated by specific inhibitors.

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